Return-path: <58615-93744-396881-12807-llg+2Dboard=lojban.org@mail.antirelax.today> Envelope-to: llg-board@lojban.org Delivery-date: Mon, 28 Nov 2022 03:12:45 -0800 Received: from [104.148.89.86] (port=55569 helo=stardust.antirelax.today) by d7893716a6e6 with esmtp (Exim 4.94.2) (envelope-from <58615-93744-396881-12807-llg+2Dboard=lojban.org@mail.antirelax.today>) id 1ozc43-0094xS-3L for llg-board@lojban.org; Mon, 28 Nov 2022 03:12:44 -0800 DKIM-Signature: v=1; a=rsa-sha1; c=relaxed/relaxed; s=k1; d=antirelax.today; h=Mime-Version:Content-Type:Date:From:Reply-To:Subject:To:Message-ID; i=RedLobsterOpinionRequested@antirelax.today; bh=j1XPRz4Vb7cPw4YdQFGgnsDKi8g=; b=NhAi8JfA4hqbeWDqK+tAXoAul0k9DJD7hdDnuhnt4KTAQNnlvcmCDVTorN/eBmUrdd+5L0ylH5Ju xBzjaip+l2620U+2Ex3adxBHi8I8Yb9RLgaSPsq9DTzwF4lYKRdI868qcNlJS8MVUNFp10Yvq2FA E8Jc/wz0h+lbhSlDKVU= DomainKey-Signature: a=rsa-sha1; c=nofws; q=dns; s=k1; d=antirelax.today; b=scVeRc6OcmMn/zCyvTyobWKGIDvLYNlmZed6vGHJeUSF8TfBBqtIch3o77JDGY0Fw+pNZv2KH/16 5PPjnGPRb7rU89IBRVVeWUqssX6f0c3v8/p7pIrvux/B5wFw4Q4DHBzq2LQp2pfpeve/5WMmI4rz XF7WcDAWH0mgiRTVFD0=; Mime-Version: 1.0 Content-Type: multipart/alternative; boundary="ffc7a65a1de378de728094aecce18d50_16e30_60e51" Date: Mon, 28 Nov 2022 06:03:47 -0500 From: "Red Lobster Opinion Requested" Reply-To: "Amazing Deals" Subject: Congratulations! A Red Lobster reward has arrived! To: Message-ID: X-Spam-Score: 1.2 (+) X-Spam_score: 1.2 X-Spam_score_int: 12 X-Spam_bar: + X-Spam-Report: Spam detection software, running on the system "f6db9eef8881", has NOT identified this incoming email as spam. The original message has been attached to this so you can view it or label similar future email. If you have any questions, see @@CONTACT_ADDRESS@@ for details. Content preview: Congratulations! A Red Lobster reward has arrived! http://antirelax.today/qu4ZTIZyqMhJPFbfEBKT3rRTNDKaaJdvuBeScTxybBt4WLWYxQ http://antirelax.today/vcq8GIxdMNGF1K6LnZQx5kbqGsjWPIR0SxjL1MeKG7zoLrDTBQ Content analysis details: (1.2 points, 5.0 required) pts rule name description ---- ---------------------- -------------------------------------------------- 0.0 URIBL_BLOCKED ADMINISTRATOR NOTICE: The query to URIBL was blocked. See http://wiki.apache.org/spamassassin/DnsBlocklists#dnsbl-block for more information. 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See https://www.spamhaus.org/returnc/pub/ [URIs: antirelax.today] -0.0 SPF_PASS SPF: sender matches SPF record 0.0 SPF_HELO_NONE SPF: HELO does not publish an SPF Record -5.0 RCVD_IN_DNSWL_HI RBL: Sender listed at https://www.dnswl.org/, high trust [104.148.89.86 listed in list.dnswl.org] 0.0 HTML_IMAGE_ONLY_32 BODY: HTML: images with 2800-3200 bytes of words 0.0 HTML_FONT_LOW_CONTRAST BODY: HTML font color similar or identical to background 0.0 HTML_MESSAGE BODY: HTML included in message 0.1 DKIM_SIGNED Message has a DKIM or DK signature, not necessarily valid -0.1 DKIM_VALID_EF Message has a valid DKIM or DK signature from envelope-from domain -0.1 DKIM_VALID Message has at least one valid DKIM or DK signature -0.1 DKIM_VALID_AU Message has a valid DKIM or DK signature from author's domain 1.9 RAZOR2_CF_RANGE_51_100 Razor2 gives confidence level above 50% [cf: 100] 0.9 RAZOR2_CHECK Listed in Razor2 (http://razor.sf.net/) 1.2 URIBL_ABUSE_SURBL Contains an URL listed in the ABUSE SURBL blocklist [URIs: antirelax.today] 0.8 RDNS_NONE Delivered to internal network by a host with no rDNS --ffc7a65a1de378de728094aecce18d50_16e30_60e51 Content-Type: text/plain; Content-Transfer-Encoding: 8bit Congratulations! A Red Lobster reward has arrived! http://antirelax.today/qu4ZTIZyqMhJPFbfEBKT3rRTNDKaaJdvuBeScTxybBt4WLWYxQ http://antirelax.today/vcq8GIxdMNGF1K6LnZQx5kbqGsjWPIR0SxjL1MeKG7zoLrDTBQ otassium channel proteins involved in electric organ discharge, including KCNA1, KCNH6, and KCNJ12, are distributed differently among the three electric organs: most such proteins are most abundant in the main organ and least abundant in Sachs's organ, but KCNH6 is most abundant in Sachs's organ. The main organ and Hunter's organ are rich in the protein calmodulin, involved in controlling calcium ion levels. Calmodulin and calcium help to regulate the voltage-gated sodium channels that create the electrical discharge. These organs are also rich in sodium potassium ATPase, an ion pump used to create a potential difference across cell membranes. The maximum discharge from the main organ is at least 600 volts, making electric eels the most powerful of all electric fishes. Freshwater fishes like the electric eel require a high voltage to give a strong shock because freshwater has high resistance; powerful marine electric fishes like the torpedo ray give a shock at much lower voltage but a far higher current. The electric eel produces its strong discharge extremely rapidly, at a rate of as much as 500 Hertz, meaning that each shock lasts only about two milliseconds. To generate a --ffc7a65a1de378de728094aecce18d50_16e30_60e51 Content-Type: text/html; Content-Transfer-Encoding: 8bit Newsletter














otassium channel proteins involved in electric organ discharge, including KCNA1, KCNH6, and KCNJ12, are distributed differently among the three electric organs: most such proteins are most abundant in the main organ and least abundant in Sachs's organ, but KCNH6 is most abundant in Sachs's organ. The main organ and Hunter's organ are rich in the protein calmodulin, involved in controlling calcium ion levels. Calmodulin and calcium help to regulate the voltage-gated sodium channels that create the electrical discharge. These organs are also rich in sodium potassium ATPase, an ion pump used to create a potential difference across cell membranes. The maximum discharge from the main organ is at least 600 volts, making electric eels the most powerful of all electric fishes. Freshwater fishes like the electric eel require a high voltage to give a strong shock because freshwater has high resistance; powerful marine electric fishes like the torpedo ray give a shock at much lower voltage but a far higher current. The electric eel produces its strong discharge extremely rapidly, at a rate of as much as 500 Hertz, meaning that each shock lasts only about two milliseconds. To generate a






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